forked from Imagelibrary/rtems
* canbus/canbus.c, clock/p_clock.c, include/bsp.h, include/canbus.h, include/coverhd.h, irq/irq.c, irq/irq.h, irq/irq_asm.S, irq/irq_init.c, startup/bspstart.c, startup/mmutlbtab.c, startup/setvec.c, vectors/vectors.h, vectors/vectors_init.c: URL for license changed.
220 lines
5.9 KiB
C
220 lines
5.9 KiB
C
/* bsp_start()
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*
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* This routine starts the application. It includes application,
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* board, and monitor specific initialization and configuration.
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* The generic CPU dependent initialization has been performed
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* before this routine is invoked.
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*
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* The MPC860 specific stuff was written by Jay Monkman (jmonkman@frasca.com)
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*
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* COPYRIGHT (c) 1989-1999.
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* On-Line Applications Research Corporation (OAR).
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*
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* The license and distribution terms for this file may be
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* found in the file LICENSE in this distribution or at
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* http://www.rtems.com/license/LICENSE.
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*
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* $Id$
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*/
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#include <string.h>
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#include <bsp.h>
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#include <bsp/irq.h>
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#include <rtems/libio.h>
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#include <rtems/libcsupport.h>
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#include <info.h>
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#include <libcpu/cpuIdent.h>
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#include <libcpu/spr.h>
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#include <rtems/bspIo.h>
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boardinfo_t M860_binfo;
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/*
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* The original table from the application and our copy of it with
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* some changes.
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*/
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extern rtems_configuration_table Configuration;
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extern unsigned long intrStackPtr;
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rtems_configuration_table BSP_Configuration;
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rtems_cpu_table Cpu_table;
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char *rtems_progname;
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/*
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* Use the shared implementations of the following routines
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*/
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void bsp_postdriver_hook(void);
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void bsp_libc_init( void *, unsigned32, int );
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void BSP_panic(char *s)
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{
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printk("%s PANIC %s\n",_RTEMS_version, s);
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__asm__ __volatile ("sc");
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}
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void _BSP_Fatal_error(unsigned int v)
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{
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printk("%s PANIC ERROR %x\n",_RTEMS_version, v);
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__asm__ __volatile ("sc");
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}
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/*
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* Function: bsp_pretasking_hook
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* Created: 95/03/10
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*
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* Description:
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* BSP pretasking hook. Called just before drivers are initialized.
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* Used to setup libc and install any BSP extensions.
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*
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* NOTES:
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* Must not use libc (to do io) from here, since drivers are
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* not yet initialized.
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*
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*/
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void
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bsp_pretasking_hook(void)
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{
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extern int _end;
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rtems_unsigned32 heap_start;
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/*
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* Let's check to see if the size of M860_binfo is what
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* it should be. It might not be if the info.h files
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* for RTEMS and the bootloader define boardinfo_t
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* differently.
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*/
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/* Oops. printf() won't work yet, since the console is not initialized.
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I should probably find some way of doing this though.
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if (M860_binfo.size != sizeof(boardinfo_t)) {
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printf("The size of the Board Info Block appears to be incorrect.\n");
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printf(" This could occur if the 'info.h' files for RTEMS and the\n");
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printf(" bootloader differ in their definition of boardinfo_t\n");
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}
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*/
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heap_start = (rtems_unsigned32) &_end;
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/* Align the heap on a natural boundary (4 bytes?) */
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if (heap_start & (CPU_ALIGNMENT-1)) {
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heap_start = (heap_start + CPU_ALIGNMENT) & ~(CPU_ALIGNMENT-1);
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}
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/* set up a 256K heap */
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bsp_libc_init((void *) heap_start, 256 * 1024, 0);
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#ifdef RTEMS_DEBUG
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rtems_debug_enable( RTEMS_DEBUG_ALL_MASK );
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#endif
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}
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SPR_RW(SPRG0)
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SPR_RW(SPRG1)
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void bsp_start(void)
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{
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extern int _end;
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rtems_unsigned32 heap_start;
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rtems_unsigned32 ws_start;
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ppc_cpu_id_t myCpu;
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ppc_cpu_revision_t myCpuRevision;
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register unsigned char* intrStack;
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extern void cpu_init(void);
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/*
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* Get CPU identification dynamically. Note that the get_ppc_cpu_type() function
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* store the result in global variables so that it can be used latter...
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*/
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myCpu = get_ppc_cpu_type();
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myCpuRevision = get_ppc_cpu_revision();
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cpu_init();
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mmu_init();
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/*
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* Initialize some SPRG registers related to irq handling
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*/
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intrStack = (((unsigned char*)&intrStackPtr) - CPU_MINIMUM_STACK_FRAME_SIZE);
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_write_SPRG1((unsigned int)intrStack);
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/* Signal them that this BSP has fixed PR288 - eventually, this should go away */
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_write_SPRG0(PPC_BSP_HAS_FIXED_PR288);
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/*
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* Install our own set of exception vectors
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*/
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initialize_exceptions();
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/*
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* Allocate the memory for the RTEMS Work Space. This can come from
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* a variety of places: hard coded address, malloc'ed from outside
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* RTEMS world (e.g. simulator or primitive memory manager), or (as
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* typically done by stock BSPs) by subtracting the required amount
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* of work space from the last physical address on the CPU board.
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*/
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/*
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* Need to "allocate" the memory for the RTEMS Workspace and
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* tell the RTEMS configuration where it is. This memory is
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* not malloc'ed. It is just "pulled from the air".
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*/
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heap_start = (rtems_unsigned32) &_end;
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if (heap_start & (CPU_ALIGNMENT-1))
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heap_start = (heap_start + CPU_ALIGNMENT) & ~(CPU_ALIGNMENT-1);
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ws_start = heap_start + (256 * 1024);
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if (ws_start & ((512 * 1024) - 1)) { /* align to 512K boundary */
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ws_start = (ws_start + (512 * 1024)) & ~((512 * 1024) - 1);
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}
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BSP_Configuration.work_space_start = (void *)ws_start;
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BSP_Configuration.work_space_size = 512 * 1024;
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/*
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* initialize the CPU table for this BSP
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*/
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Cpu_table.pretasking_hook = bsp_pretasking_hook; /* init libc, etc. */
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Cpu_table.postdriver_hook = bsp_postdriver_hook;
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Cpu_table.interrupt_stack_size = CONFIGURE_INTERRUPT_STACK_MEMORY;
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Cpu_table.clicks_per_usec = 1; /* for 4MHz extclk */
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Cpu_table.serial_per_sec = 10000000;
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Cpu_table.serial_external_clock = 1;
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Cpu_table.serial_xon_xoff = 0;
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Cpu_table.serial_cts_rts = 1;
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Cpu_table.serial_rate = 9600;
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Cpu_table.timer_average_overhead = 0;
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Cpu_table.timer_least_valid = 0;
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Cpu_table.clock_speed = 40000000;
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/*
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* Since we are currently autodetecting whether to use SCC1 or
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* the FEC for ethernet, we set up a register in the ethernet
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* transciever that is used for 10/100 Mbps ethernet now, so that
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* we can attempt to read it later in rtems_enet_driver_attach()
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*/
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m8xx.fec.mii_speed = 0x0a;
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m8xx.fec.mii_data = 0x680a0000;
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m8xx.scc2.sccm=0;
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m8xx.scc2p.rbase=0;
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m8xx.scc2p.tbase=0;
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m8xx_cp_execute_cmd( M8xx_CR_OP_STOP_TX | M8xx_CR_CHAN_SCC2 );
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/*
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* Initalize RTEMS IRQ system
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*/
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BSP_rtems_irq_mng_init(0);
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#ifdef SHOW_MORE_INIT_SETTINGS
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printk("Exit from bspstart\n");
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#endif
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}
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